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Updated: Jan 28, 2026

Author Spotlight: Tracing the Ferroptotic Signatures and Cell Death Dynamics in Medulloblastoma for Advanced Therapeutics
Published on: March 15, 2024
Potent Antineoplastic Effects of Combined PI3Kα-MNK Inhibition in Medulloblastoma
Frank Eckerdt1,2, Jonathan B Bell1, Elspeth M Beauchamp1,3,4
1Robert H. Lurie Comprehensive Cancer Center of Northwestern University, Chicago, Illinois.
Abstract:
Medulloblastoma is a highly malignant pediatric brain tumor associated with poor outcome. Developing treatments that target the cancer stem cell (CSC) population in medulloblastoma are important to prevent tumor relapse and induce long-lasting clinical responses. We utilized medulloblastoma neurospheres that display CSC characteristics and found activation of the PI3K/AKT pathway in sphere-forming cells. Of all class IA PI3Ks, only the PI3Kα isoform was required for sphere formation by medulloblastoma cells. Knockdown of p110α, but not p110β or p110δ, significantly disrupted cancer stem cell frequencies as determined by extreme limiting dilution analysis (ELDA), indicating an essential role for the PI3Kα catalytic isoform in medulloblastoma CSCs. Importantly, pharmacologic inhibition of the MAPK-interacting kinase (MNK) enhanced the antineoplastic effects of targeted PI3Kα inhibition in medulloblastoma. This indicates that MNK signaling promotes survival in medulloblastoma, suggesting dual PI3Kα and MNK inhibition may provide a novel approach to target and eliminate medulloblastoma CSCs. We also observed a significant reduction in tumor formation in subcutaneous and intracranial mouse xenograft models, which further suggests that this combinatorial approach may represent an efficient therapeutic strategy for medulloblastoma. IMPLICATIONS: These findings raise the possibility of a unique therapeutic approach for medulloblastoma, involving MNK targeting to sensitize medulloblastoma CSCs to PI3Kα inhibition.
Insights
Targeting PI3Kα and MNK pathways shows promise against medulloblastoma stem cells. This dual inhibition strategy may prevent relapse in pediatric brain tumors by eliminating cancer stem cells (CSCs).
Area of Science:
- Oncology
- Neuroscience
- Molecular Biology
Background:
- Medulloblastoma is a severe pediatric brain tumor with a poor prognosis.
- Targeting cancer stem cells (CSCs) is crucial for preventing medulloblastoma relapse.
- The PI3K/AKT pathway is implicated in medulloblastoma stem cell survival.
Purpose of the Study:
- To investigate the role of PI3K isoforms in medulloblastoma CSCs.
- To evaluate the efficacy of combined PI3Kα and MNK inhibition as a therapeutic strategy.
Main Methods:
- Utilized medulloblastoma neurospheres to model CSCs.
- Assessed PI3K isoform requirement for sphere formation.
- Performed knockdown of p110 subunits (p110α, p110β, p110δ).
- Employed extreme limiting dilution analysis (ELDA) for CSC frequency determination.
- Tested pharmacologic inhibition of MAPK-interacting kinase (MNK).
- Evaluated therapeutic effects in mouse xenograft models (subcutaneous and intracranial).
Main Results:
- PI3Kα isoform was essential for medulloblastoma CSC sphere formation.
- Knockdown of p110α significantly reduced CSC frequencies.
- MNK inhibition enhanced the anti-cancer effects of PI3Kα inhibition.
- Combined PI3Kα and MNK inhibition reduced tumor formation in vivo.
Conclusions:
- PI3Kα is a critical target in medulloblastoma CSCs.
- MNK signaling promotes survival in medulloblastoma, sensitizing cells to PI3Kα inhibition.
- Dual inhibition of PI3Kα and MNK represents a potential novel therapeutic strategy for medulloblastoma, particularly for eliminating CSCs and preventing relapse.
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